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Event-Based Communication and Finite-Time Consensus Control of Mobile Sensor Networks for Environmental Monitoring

机译:基于事件的移动传感器网络环境监测的通信和有限时间共识控制

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摘要

This paper deals with the problem of environmental monitoring by designing a cooperative control scheme for mobile sensor networks. The proposed cooperative control scheme includes three main modules: a wireless communication module, a direction decision module, and a motion control module. In the wireless communication module, an event-based communication rule is proposed, which means that mobile sensor nodes do not send their positions, velocities, and the data of environmental attributes to the other sensor nodes in real-time for the coordination and control of mobile sensor networks. Due to using the event-based communication rule, the communication bandwidth can be saved. In the direction decision module, a radial basis function network is used to model the monitored environment and is updated in terms of the sampled environmental data and the environmental data from the other sensor nodes by the wireless communication module. The updated environment model is used to guide the mobile sensor network to move towards the region of interest in order to efficiently model the distribution map of environmental attributes, such as temperature, salinity, and pH values for the monitored environment. In the motion control module, a finite-time consensus control approach is proposed to enable the sensor nodes to quickly change their movement directions in light of the gradient information from the environment model. As a result of using the event-based communication rule in the wireless communication module, the proposed control approach can also lower the updating times of the control signal. In particular, the proposed cooperative control scheme is still efficient under the directed wireless communication situation. Finally, the effectiveness of the proposed cooperative control scheme is illustrated for the problem of environmental monitoring.
机译:本文通过设计移动传感器网络的协同控制方案来涉及环境监测问题。所提出的协作控制方案包括三个主要模块:无线通信模块,方向决策模块和运动控制模块。在无线通信模块中,提出了一种基于事件的通信规则,这意味着移动传感器节点不会在实时向其他传感器节点发送它们的位置,速度和环境属性的数据,以便协调和控制移动传感器网络。由于使用基于事件的通信规则,可以保存通信带宽。在方向决策模块中,径向基函数网络用于模拟受监视的环境,并且通过无线通信模块根据采样的环境数据和来自其他传感器节点的环境数据来更新。更新的环境模型用于指导移动传感器网络以向感兴趣区域移动,以便有效地模拟环境属性的分布图,例如温度,盐度和监测环境的pH值。在运动控制模块中,提出了一种有限时间共识控制方法,以使传感器节点鉴于来自环境模型的梯度信息,以快速改变它们的移动方向。由于在无线通信模块中使用基于事件的通信规则,所提出的控制方法也可以降低控制信号的更新时间。特别是,在指示的无线通信情况下,所提出的协作控制方案仍然有效。最后,拟议的合作控制方案的有效性被说明了环境监测问题。

著录项

  • 作者

    Yu Hu; Qiang Lu; Yanzhu Hu;

  • 作者单位
  • 年度 2018
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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